EP0309011B1 - Bodenbearbeitungsmaschine - Google Patents

Bodenbearbeitungsmaschine Download PDF

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Publication number
EP0309011B1
EP0309011B1 EP88201533A EP88201533A EP0309011B1 EP 0309011 B1 EP0309011 B1 EP 0309011B1 EP 88201533 A EP88201533 A EP 88201533A EP 88201533 A EP88201533 A EP 88201533A EP 0309011 B1 EP0309011 B1 EP 0309011B1
Authority
EP
European Patent Office
Prior art keywords
roller
implement
scraper
soil
axis
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP88201533A
Other languages
English (en)
French (fr)
Other versions
EP0309011A1 (de
Inventor
Cornelis Van Der Lely
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
C Van der Lely NV
Original Assignee
C Van der Lely NV
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=19843351&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=EP0309011(B1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by C Van der Lely NV filed Critical C Van der Lely NV
Publication of EP0309011A1 publication Critical patent/EP0309011A1/de
Application granted granted Critical
Publication of EP0309011B1 publication Critical patent/EP0309011B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01BSOIL WORKING IN AGRICULTURE OR FORESTRY; PARTS, DETAILS, OR ACCESSORIES OF AGRICULTURAL MACHINES OR IMPLEMENTS, IN GENERAL
    • A01B29/00Rollers
    • A01B29/04Rollers with non-smooth surface formed of rotatably-mounted rings or discs or with projections or ribs on the roller body; Land packers
    • A01B29/045Rollers with non-smooth surface formed of rotatably-mounted rings or discs or with projections or ribs on the roller body; Land packers the soil-pressing body being a drum
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01BSOIL WORKING IN AGRICULTURE OR FORESTRY; PARTS, DETAILS, OR ACCESSORIES OF AGRICULTURAL MACHINES OR IMPLEMENTS, IN GENERAL
    • A01B29/00Rollers
    • A01B29/06Rollers with special additional arrangements

Definitions

  • the invention relates to a soil cultivating implement comprising a ground roller and a plurality of scrapers constructed and arranged so as to extend between groups of teeth carried by a curved surface of the roller in a soil-shedding manner, while a scraper has a profiled cross-section.
  • a suchlike implement is known from EP-A-0081271.
  • the machine described herein comprises a roller and scrapers, apparently produced of sheet metal, partly being bent along a line parallel to the roller axis into one end portion prepared for mounting to a vertically, and opposed to the axis of the roller, extending bres part of a carrier, and one end portion prepared for scraping the roller, the upper side of this portion showing an open angle with the end portion prepared for fixation.
  • the shedding end portion of said scraper comprises two lateral front parts which are further bend along straight lines extending between the pointed end of the scraper and a lateral end of the above mentioned bending line which devides the scraper into a portion for mounting and a shedding end portion.
  • the pointed end of the scraper is intended to contact the roller at the level of its central axis so that the said lateral front parts are bend inwardly up to an angle at which the front edges of it more or less match the curvature of the roller.
  • a suchlike object is rather complicated, while, in use, a suchlike scraper is less attractive as the said bendings are liable to collapsing under severe soil working conditions, unless they are effectively hardened.
  • Such a hardening would furthermore lead to a cost rising treatment of this scraper.
  • a scraper will relatively quickly loose its profiled cross-section after wearing away so that working action of the scraper will quickly decrease. It is the object of the present invention to provide for a machine comprising a roller with scrapers which are at least relatively sturdy under all soil working conditions, which are relatively easy to produce and which will remain of the same shape after wearing away so that the scraping action will not be lost.
  • the profiled cross-section is of a curved shape, the curvature being about an axis at least substantially orthogonal to the axis of rotation of the roller and being provided throughout the length of the said scraper.
  • the soil cultivating implement that is illustrated is in the form of a rotary harrow that is intended principally, but not exclusively, for use in the preparation of seed beds in previously worked soil.
  • the implement has a hollow box-section frame portion 1 of elongate configuration that extends substantially horizontally transverse, and usually, as illustrated, substantially horizontally perpendicular, to the intended direction of operative travel of the implement that is indicated in Figures 1 and 2 of the drawings by an arrow A.
  • a plurality, of which there are twelve in the example that is being described, of substantially vertical, or at least upwardly extending, shafts 2 are rotatably mounted in bearings carried by upper and lower walls of the hollow frame portion 1 so as to lie in a single row with their parallel longitudinal axis/axes of rotation spaced apart from one another at equal distances which very advantageously, but not essentially, have magnitudes of substantially 25 centimetres.
  • Each shaft 2 projects downwardly from beneath the bottom of the hollow frame portion 1 and the downwardly projecting portions thereof is splined or otherwise keyed and has a corresponding soil working member that is generally indicated by the reference 3 firmly but releasably secured to it by means which include a washer, a nut co-operating with a short screw-threaded lowermost end region of the shaft 2 concerned and a split pin or other known means arranged to prevent the nut from working loose.
  • Each soil working member 3 comprises a substantially horizontally disposed carrier 4 which has two substantially symmetrically identical arms that project more or less radially outwards from a hub thereof that is secured to the downwardly projecting portion of the corresponding shaft 2.
  • each carrier 4 defines corresponding sleeve-like holders in which upper fastening portions of two soil working tools in the form of rigid metallic tines 5 are firmly but releasably secured with the aid of nuts which co-operate with upper screw-threaded regions of the fastening portions thereof.
  • each side plate 6 is generally rectangular in shape and carrying, at its upper leading corner with respect to the direction A, a strong pivot 7 that is substantially horizontally parallel to the row of soil working members 3, the two pivots 7 being in alignment.
  • the leading end of an arm 8 is mounted on each pivot 7 so as to be upwardly and downwardly turnable about the substantially horizontal axis defined by the two pivots 7 and in such a way that the arm extends generally rearwardly from the corresponding pivot 7 alongside that surface of the respective plate 6 which faces the centre of the implement.
  • An adjustment mechanism 9 interconnects each arm 8 and the neighbouring frame portion side plate 6 at a location close to the curved rear edge of that side plate 6, one of the two mechanisms 9 being clearly visible in Figure 2 of the drawings from which it will be seen that said mechanism comprises a straight screw-threaded spindle having a manually operable crank handle at its upper end, a bracket secured to the side plate 6 concerned, means connecting a lowermost unthreaded end region of the spindle to said bracket in such a way that the spindle is rotatable relative to the bracket without being significantly axially displaceable with respect thereto and, finally, a block turnably connected to the corresponding arm 8 and being formed with a transverse internally screw-threaded bore through which the matchingly screw-threaded spindle extends.
  • each adjustment mechanism 9 is such that the angular displacement of the corresponding arm 8 is infinitely variable between fixed limits.
  • each arm 8 integrally joins an obliquely downwardly and rearwardly inclined portion 10 in the region of the corresponding adjustment mechanism 9 and that portion 10, in turn, integrally joins a less steeply downwardly and rearwardly inclined portion 11 that is of gently tapering upright width from the inclined portion 10 to its rearmost free end.
  • Each arm portion 11 has firmly but releasably secured to it, just rearwardly of its junction with the corresponding inclined portion 10, the upper end of a downwardly and rearwardly inclined roller support 13, it being noted that the front of the upper end of each support 13 is also provided with a guide clamp which includes a portion that overlaps the curved rear edge of the corresponding frame portion side plate 6 in such a way as to provide guidance designed to prevent lateral deviation and in such a way that a bolt incorporated therein can be tightened, when required, to clamp the arm assembly 8, 10, 11 firmly but releasably to the associated side plate 6 to relieve the corresponding adjustment mechnism 9 of most of the stress which it would otherwise be subject to during the use of the implement.
  • a ground roller that is generally indicated by the reference 14 is mounted in a freely rotatable manner between lowermost and rearmost end regions of the two supports 13, said roller 14 having substantially horizontally aligned stub shafts 16 at its opposite ends which stub shafts 16 are rotatably received in horizontally aligned bearings arranged in corresponding housings 17 ( Figures 1 and 3), the common longitudinal axis of the two stub shafts 16 being the intended axis of rotation a of the roller 14.
  • the roller 14 is, in the embodiment that is being described, a so-called "packer” roller and comprises a hollow cylinder 15 of circular cross-section whose longitudinal axis coincides with the axis a that has just been mentioned.
  • the external diameter of the roller cylinder 15 has a magnitude of not less than 20 centimetres and not more than 30 centimetres.
  • the external surface of the cylinder 15 is provided, at regularly spaced apart intervals along its length, with a plurality of groups or crowns of teeth 18, each group or crown being contained in a corresponding substantially vertical plane that is perpendicular to the axis a but parallel or substantially parallel to the direction A and to each of the other groups or crowns.
  • Each group or crown comprises ten of the teeth 18, the latter being formed in integral pairs (see Figure 2) and each pair being spot-welded or otherwise rigidly secured to the outer surface of the cylinder 15.
  • a scraper 19 is arranged between each successively neighbouring pair of groups or crowns of teeth 18 at the rear of the roller cylinder 15 with respect to the direction A in order to keep the roller 14 as free as possible from adhering mud, other accumulations of soil, remnants of previous crops and other agricultural debris that, if not removed, would interfere with the action of the roller 14 and thus prevent the implement from forming a well crumbled seed bed having a gently but smoothly compacted surface.
  • Each scraper 19 is in the form of an oblong plate and may advantageously be formed from metal or other strong material having some resiliency.
  • the leading edges, with respect to the direction A, of the scrapers 19 are arranged very close to, but just clear of actual contact with, the outer curved surface of the cylinder 15, between the groups or crowns of teeth 18, so that said scrapers 19 will not impede rotation of the roller 14 except, momentarily, to a small extent when a stubborn clod of soil, jammed stone or the like is dislodged.
  • the locations at which the leading ends of the scrapers 19 are very close to the outer surface of the roller cylinder 15 are spaced perpendicularly beneath an imaginary horizontal plane containing the axis a by a distance which is not less than 1/6 of the outer diameter of the cylinder 15.
  • Each end of the tubular carrier 26 that extends subtantially horizontally parallel to the axis of rotation a of the roller 14 is provided with corresponding diametrically opposed upwardly and downwardly directed lugs 27.
  • Each lower lug 27 is pivotally connected, by a corresponding horizontal pivot pin, to the rearmost end of the rear portion 11 of the corresponding arm 8, said pivot pin defining an axis which is parallel to the axis of rotation a of the roller 14.
  • the top of each upwardly projecting lug 27, on the other hand, is turnably connected by a further parallel pivot to a block formed with an internally screw-threaded transverse bore.
  • This bore receives the matchingly screw-threaded shank of a spindle 30, that is more or less horizontally parallel to the direction A, and that has a manually operable crank handle at its rearmost end.
  • the leading end of each spindle 30 is rotatably but axially immovably received in a socket forming the base of a fork 31 whose limbs are connected, by a further pivot pin 32 that is substantially parallel to the axis a , to an integral upward projection at the junction between the leading end of the inclined portion 10 of the corresponding arm and the rearmost end of that arm 8, proper.
  • Two shield plates 33 that, during operation, extend substantially vertically parallel to one another and to the direction A lie immediately beyond the opposite ends of the single row of rotary soil working members 3 and function principally to co-operate with the neighbouring soil working members 3 at the opposite ends of said row in cultivating the soil to substantially the same thorough extent as is produced by the co-operation between neighbouring pairs of members 3 at locations closer to the centre of the implement.
  • the shield plates 33 prevent the rapidly moving tines 5 of the soil working members 3 from flinging stones and other hard objects laterally of the path of travel of the implement so that the danger of damage or injury that might otherwise be caused in this way is very greatly reduced, if not-entirely eliminated.
  • Each shield plate 33 is carried by a corresponding single arm having a portion that is mounted on top of the hollow frame portion 1, at a short distance inwardly from the neighbouring end of that frame portion, so as to be turnable about a substantially horizontal axis that is substantially parallel to the direction A.
  • This enables each shield plate 33, whose lowermost edge is shaped to slide forwardly over the ground surface, to turn upwardly and downwardly to match undulations in the ground that may be met with during operative progress in the direction A and also allows each shield plate to be turned upwardly and inwardly through substantially 180° so that it can occupy an inoperative transport position in which it is inverted on top of the hollow frame portion 1.
  • Each shaft 2 is provided, inside the hollow frame portion 1, with a corresponding straight- or spur-toothed pinion 34, the size of each pinion 34 being such that its teeth are in mesh with those of the or each neighbouring pinion 34 in the single row, in this embodiment, of twelve such pinions 34. Due to this inter-meshing relationship between the pinions 34, each shaft 2, soil working member 3 and pinion 34 will revolve in the opposite direction to the or each immediately neighbouring similar assembly, these directions of rotation being indicated for two such assemblies at the top of Fig. 1 of the drawings.
  • One of the centre pair of shafts 2 in the single row of twelve such shafts has an upward extension through the top of the hollow frame portion 1 into a gearbox 35 that is firmly secured to the top of said frame portion 1 by bolts.
  • Shafts and bevel pinions inside the gearbox 35 place the upward shaft extension that has just been mentioned in driven connection with a rotary input shaft 37 of the gearbox whose leading splined or otherwise keyed end projects forwardly in substantially the direction A from the front thereof where it can be placed in driven connection with the rear power take-off shaft of an agricultural tractor or other operating vehicle through the intermediary of a telescopic transmission shaft 39, which is of a construction that is known per se , having universal joints at its opposite ends.
  • the rear of the gearbox 35 is provided with a change-speed gear 36 whose construction and operation are not the subject of the present invention. It suffices to say that, beneath a readily removable cover of the change-speed gear 36, two splined or otherwise keyed shaft ends are accessible and carry the matchingly internally splined or otherwise keyed hubs of a pair of inter-meshing straight- or spur-toothed pinions to give a pre-determined transmission ratio between the two shafts concerned.
  • the two pinions can be interchanged in position on the shaft ends, or can be exchanged for at least one other pair of co-operating pinions of different sizes, to give any chosen one of a number of different transmission ratios thus enabling the rotary soil working members 3 to be revolved at any chosen one of a number of different speeds without having to alter the speed of driving rotation that is applied to the forwardly projecting rotary input shaft 37 of the gearbox 35.
  • the top and front of the hollow frame portion 1, with respect to the direction A, is provided with a coupling member or trestle 38 that is of substantially isosceles triangular configuration as seen in either front or rear elevation and this coupling member or trestle 38 is constructed and arranged to connect the implement to a three-point lifting device or hitch at the rear of the agricultural tractor or other vehicle which is both to move the implement forwardly in the direction A and to operate its soil working members 3.
  • the coupling member or trestle 38 and the three-point lifting device or hitch may both be of a known kind and the arrangement that has just been described is illustrated somewhat diagrammatically in Fig. 1 of the drawings. Locations at substantially the apex of the coupling member or trestle 38 are strengtheningly connected by steeply downwardly and rearwardly divergent tie beams to widely spaced-apart locations at the top and rear of the hollow frame portion 1.
  • Adjustments that may, if necessary, be made before work commences include setting the maximum depth to which the tines 5 of the soil working members 3 will be able to penetrate into the ground by raising or lowering the bodily level of the ground roller 14 relative to that of the frame portion 1 and soil working members 3 using the two adjusting mechanisms 9 to change that bodily level.
  • the transmission ratio established in the change-speed gear 36 may also, if required, be altered to bring about a faster or slower speed of rotation of the soil working members 3.
  • each soil working member 3 will work a corresponding strip of soil that extends in the same direction and, since the effective working width of each member 3 is the same as, or a little greater than, the distance between the axes of rotation of neighbouring members 3, these individual strips will overlap, or at least adjoin, one another to produce a single broad strip of worked soil extending in the direction A and having a width of substantially, although not necessarily exactly, three metres when the preferred dimensions that have been referred to above are employed. It will be apparent that a greater or smaller working width could be produced by employing a larger or smaller number of the rotary soil working members 3.
  • the so-called packer roller 14 which forms part of the implement that has been described by way of example is particularly advantageous when seed beds are to be prepared in soil that is somewhat heavy in nature.
  • the teeth 18 of the roller 14 project into the soil when the implement is in use and cause the roller 14 to be revolved around its own axis a .
  • the outer curved surface of the roller cylinder 15 gently compresses the soil that has immediately previously been crumbled by the tines 5 of the members 3 and thus the freshly worked soil is gently consolidated into a seed bed whose structure is substantially optimum for the subsequent sowing and later germination of seeds.
  • Figures 2 to 6 of the drawings illustrate a still further embodiment in which the two arms 52 of the Figures 2 and 3 are provided, at their rear ends, with two support arms 60 that are bolted or otherwise rigidly secured to the arms 52 so as to project downwardly and rearwardly therefrom, with respect to the direction A, at a steeper angle of inclination to the horizontal than are the corresponding roller supports 13 (see Fig. 2).
  • the lower ends of the two support arms 60 are interconnected by a carrier 40 of the same construction as the carrier 40 of the embodiment of Figures 5 and 6 of the drawings but said carrier 40 being disposed, in this embodiment, so that its limbs project principally downwardly and rearwardly to some extent from the uppermost web or base thereof.
  • the plate 42 that is bolted to the perpendicularly bent-over rims of the carrier limbs also has secured to it by the same bolts a plurality of flat scrapers 61 whose leading ends, with respect to the direction A, are located at the same horizontal level, relative to that of the horizontal level of the roller axis a , as has been mentioned above in respect of the preceding embodiments.
  • Each scraper 61 is again substantially oblong in shape but the leading end thereof which is disposed in close proximity to the roller cylinder 15, is shaped as an oblique convex rim 62 (Figs. 4 and 5).
  • each scraper 61 is of arcuately curved cross-section and is so connected to the carrier 40 that the convex side of that curvature faces upwardly and forwardly with the convex rim 62 foremost and lowermost.
  • each scraper 61 faces downwardly and rearwardly and the radius of curvature of the convex rim 62 at the leading lower end thereof is such that said curvature matches the curvature of the surface of the roller cylinder 15 at the particular inclination of the scraper 61 to that cylinder surface.
  • the curved or hollow cross-sectional shape of each scraper 61 considerably increases the strength of that scraper as regards its resistance to bending deformation.
  • the concave side of each scraper 61 is fixedly provided with two spacing sleeves 63 that surround the holes which receive the bolts that secure the scraper 61 to the plate 42 and to the carrier 40.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Soil Sciences (AREA)
  • Environmental Sciences (AREA)
  • Soil Working Implements (AREA)

Claims (3)

  1. Bodenbearbeitungsmaschine mit einer Bodenwalze (14) und mehreren Abstreifern (61), die zum Ablösen von Erde derart ausgebildet und angeordnet sind, daß sie sich bis zwischen Gruppen von an einer gekrümmten Fläche (15) der Walze (14) angeordneten Zähnen erstrecken, wobei ein Abstreifer (61) einen profilierten Querschnitt aufweist,
    dadurch gekennzeichnet, daß der profilierte Querschnitt von gekrümmter Form ist, daß die Achse der Krümmung zumindest im wesentlichen orthogonal zu der Drehachse der Walze angeordnet ist, und daß der Abstreifer (61) über seine gesamte Länge den profilierten Querschnitt aufweist.
  2. Bodenbearbeitungsmaschine nach Anspruch 1,
    dadurch gekennzeichnet, daß der Abstreifer (61) in seiner Arbeitslage derart an der Maschine angeordnet ist, daß seine konkave Seite nach oben gewandt ist.
  3. Bodenbearbeitungsmaschine nach Anspruch 1 oder 2,
    dadurch gekennzeichnet, daß das vordere Ende des Abstreifers (61) in bezug auf die Arbeitsrichtung der Maschine derart gestaltet ist, daß es sich der Krümmung der gekrümmten Fläche (15) der Bodenwalze (14) anpaßt, so daß das derart gestaltete Ende dicht neben der gekrümmten Fläche (15) liegt.
EP88201533A 1984-01-19 1985-01-17 Bodenbearbeitungsmaschine Expired - Lifetime EP0309011B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL8400171 1984-01-19
NL8400171A NL8400171A (nl) 1984-01-19 1984-01-19 Grondbewerkingsmachine.

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
EP85200040.5 Division 1985-01-17

Publications (2)

Publication Number Publication Date
EP0309011A1 EP0309011A1 (de) 1989-03-29
EP0309011B1 true EP0309011B1 (de) 1993-05-19

Family

ID=19843351

Family Applications (2)

Application Number Title Priority Date Filing Date
EP85200040A Expired - Lifetime EP0150080B1 (de) 1984-01-19 1985-01-17 Bodenbearbeitungsgeräte
EP88201533A Expired - Lifetime EP0309011B1 (de) 1984-01-19 1985-01-17 Bodenbearbeitungsmaschine

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP85200040A Expired - Lifetime EP0150080B1 (de) 1984-01-19 1985-01-17 Bodenbearbeitungsgeräte

Country Status (3)

Country Link
EP (2) EP0150080B1 (de)
DE (3) DE3587818T2 (de)
NL (1) NL8400171A (de)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1423998A1 (de) 2002-11-30 2004-06-02 Amazonen-Werke H. Dreyer GmbH & Co. KG Bodenwalze

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL8701605A (nl) * 1987-07-08 1989-02-01 Lely Nv C Van Der Grondbewerkingsmachine.
NL8801489A (nl) * 1988-06-10 1990-01-02 Lely Nv C Van Der Grondbewerkingsmachine.
NL8803046A (nl) * 1988-12-13 1990-07-02 Lely Nv C Van Der Grondbewerkingsmachine.
DE4238603A1 (de) * 1992-11-16 1994-05-19 Amazonen Werke Dreyer H Stützwalze
US10391521B2 (en) 2016-07-29 2019-08-27 Steve L. Gilbert Systems and methods for large debris conveyance
CN108391476B (zh) * 2018-05-08 2024-03-15 郴州市铿锵农业科技有限公司 用于整地辊筒的刮土板装置和播种机
EP3772266B1 (de) * 2019-08-05 2023-09-27 Markus Ruf Reitbahnplaner für verschiedene reitdisziplinen

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE239009C (de) * 1910-02-11 1911-10-07
US1645994A (en) * 1925-06-22 1927-10-18 Lloyd Glover Cyrus Agricultural implement
CH137968A (de) * 1929-02-26 1930-02-15 Bucher Guyer Ag Masch Bremseinrichtung an dreiteiligen Acker- und Wiesenwalzen.
US1916330A (en) * 1932-05-19 1933-07-04 Nordstrom Abel Roller for crushing clods
US2667362A (en) * 1951-09-20 1954-01-26 Leslie R Woodward Corn planter packer wheel scraper
DE2462240A1 (de) * 1974-08-09 1976-06-24 Amazonen Werke Dreyer H Packerwalze
NL181703B (nl) * 1976-12-03 1987-05-18 Lely Nv C Van Der Grondbewerkingsmachine.
DE2856298C2 (de) * 1978-12-27 1985-03-28 Amazonen-Werke H. Dreyer Gmbh & Co Kg, 4507 Hasbergen Bodenwalze
DE8031009U1 (de) * 1980-11-20 1981-06-11 Maschinenfabrik Rau Gmbh, 7315 Weilheim Kruemelwalze
DE8026581U1 (de) * 1980-10-04 1981-02-12 Maschinenfabrik Rau Gmbh, 7315 Weilheim Krümelwalze
DE3167560D1 (en) * 1981-05-06 1985-01-17 Deere John Mower-conditioner
NL8105506A (nl) * 1981-12-08 1983-07-01 Lely Nv C Van Der Grondbewerkingsmachine.
FR2522460A1 (fr) * 1982-03-05 1983-09-09 Lely France Perfectionnements aux rouleaux agricoles

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1423998A1 (de) 2002-11-30 2004-06-02 Amazonen-Werke H. Dreyer GmbH & Co. KG Bodenwalze

Also Published As

Publication number Publication date
EP0150080A2 (de) 1985-07-31
DE3501535A1 (de) 1985-07-25
DE3587357D1 (de) 1993-06-24
EP0150080A3 (en) 1986-12-03
NL8400171A (nl) 1985-08-16
EP0150080B1 (de) 1994-05-11
DE3587357T2 (de) 1993-12-09
DE3587818D1 (de) 1994-06-16
DE3587818T2 (de) 1994-12-22
EP0309011A1 (de) 1989-03-29
DE3501535C2 (de) 1989-10-19

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